A LightGBM machine-learning model predicts the strength of waste-glass concrete while helping researchers interpret how ...
A WORLD-FIRST recycled glass solution has been approved for a new housing scheme in Scotland. VASO Global is a pioneering ...
This study investigates the effects of iron processing waste and magnetized water on concrete, revealing their potential to ...
A new approach to vibration wave analysis in blasting demolition offers insights into wave characteristics, aiding in hazard ...
Advancing construction site operations and knowledge transfer through AI at the Fujitsu Park redevelopment project.
A new study published in Scientific Reports has found that treating recycled concrete with magnetized water and nano-silica can increase compressive strength by up to 14 % while significantly reducing ...
Construction robotics is moving onto real job sites. Discover the benefits, costs, limitations, and evidence behind automated ...
Bio-based construction materials, designed to advance low-carbon building practices across Europe, have had their performance compared. Several material categories were assessed using a multi-criteria ...
A new study identifies a concrete mix containing limestone powder that improves water retention and interlayer bond strength in laboratory-scale 3D-printed concrete.
Researchers give coffee waste a second life as a low-carbon replacement for sand in concrete. Study: Carbon footprint reduction in concrete using spent coffee grounds biochar: a life cycle perspective ...
A research team from Graz University of Technology has proposed a bold new concept that involves integrating selected microorganisms into façade coatings to create “living tattoos” for buildings.
Scientists have used AI and advanced modeling to design greener cement mixes, cutting carbon emissions without sacrificing strength and offering a faster, more efficient route to sustainable ...
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